///
/// Copyright (c) 2013-2015 Sensus Metering Systems
///
using System;
using System.Text;
using System.IO.Ports;
using System.Collections.Generic;
using TBF.BenchControl.Generic;
using TBF.BenchControl.GenericDevices;
using log4net;
namespace TBF.BenchControl.Elde
{
public class ControlBoardDev : ComponentBase, IDevice, IValveControl
{
private static readonly ILog log = LogManager.GetLogger(typeof(ControlBoardDev));
public override string ToString() { return string.Format("ControlBoard({0})", Cfg.ToString(1)); }
readonly ControlBoardCfg controlBoardCfg;
///
/// Reference to the control board component
///
IControlCom controlCom;
///
/// Emergency stop signal state updated by RunDevice().
/// 'modelessDlg' is notified about the changes and uses this information to change its visibility.
///
//UiBridge.EmergencyStopEventArgs.State emergencyStopState;
///
/// Public read only wrappers for Elde software component fields
///
/// rvNr1 = 1 .. nrRegulValves (one based)
/// wmNr0 = 0 .. nrWaterMeters-1 (zero based)
/// tmpNr0 = 0 .. nrTempMeters-1 (zero based)
/// prsNr0 = 0 .. nrPressureMeters-1 (zero based)
///
public StatusP StatusP { get { return controlCom.StatusP; } }
public float ReferenceFreq { get { return controlCom.ReferenceFreq; } } /// In [Hz] 0..2500, nom.=2000
public int EtPulses(int wmNr0) { return controlCom.EtPulses(wmNr0); }
public int WMeterPulses(int wmNr0) { return controlCom.WMeterPulses(wmNr0); }
public int WMeterReference(int wmNr0) { return controlCom.WMeterReference(wmNr0); }
public uint RegulValveDAC { get { return controlCom.RegulValveDAC; } }
public float Pressure(int prsNr0) { return controlCom.Pressure(prsNr0); }
public float Temperature(int tmpNr0) { return controlCom.Temperature(tmpNr0); }
public RegulValveState RegulValveState(int rvNr1) { return (RegulValveState)controlCom.RegulValveState(rvNr1); }
public ulong RRoute { get { return controlCom.RRoute; } }
public uint DivTime { get { return controlCom.DivTime; } }
public float TTime { get { return controlCom.TTime; } }
public uint FmState { get { return controlCom.FmState; } }
public uint BeginState(int wmNr0) { return controlCom.BeginState(wmNr0); }
public float ReferenceFlow { get { return controlCom.ReferenceFlow; } }
public float RValvePosition(int rvNr1) { return controlCom.RValvePosition(rvNr1); }
public float DivSamples(int ms) { return controlCom.DivSamples(ms); }
public int ScopeSamples(int i, int j, int k) { return controlCom.ScopeSamples(i, j, k); }
public uint DigitalInputs { get { return controlCom.DigitalInputs; } }
public float AnalogInput(int adcNr0) { return controlCom.AnalogInput(adcNr0); }
public uint AnalogInputRaw(int adcNr0, int bank) { return controlCom.AnalogInputRaw(adcNr0, bank); } /// adcNr0: 0=RV1, 1=RV2,... bank: 0=RV, 1=Temp
public float ReferenceVolume { get { return controlCom.ReferenceVolume; } }
public float VyslExt(int wmNr0, int what) { return controlCom.VyslExt(wmNr0, what); }
/// Extracted from the StatusP in RunDeviceBefore
public bool EmergencyStop { get { return emergencyStop; } }
bool emergencyStop;
bool previousEmergencyStop;
private int flowmeterNr4DiverterTest;
private bool scheduleDiverterToTank;
private bool scheduleDiverterToSink;
private bool scheduleReadDiverterTransition;
///
public void DiverterToTank(int flowmeterNr)
{
if (!scheduleDiverterToSink && !scheduleReadDiverterTransition && !emergencyStop)
{
flowmeterNr4DiverterTest = flowmeterNr;
scheduleDiverterToTank = true;
}
}
///
public void DiverterToSink(int flowmeterNr)
{
if (!scheduleDiverterToTank && !scheduleReadDiverterTransition && !emergencyStop)
{
flowmeterNr4DiverterTest = flowmeterNr;
scheduleDiverterToSink = true;
}
}
///
public void ReadDiverterTransition(int flowmeterNr)
{
if (!scheduleDiverterToTank && !scheduleDiverterToSink && !emergencyStop)
{
flowmeterNr4DiverterTest = flowmeterNr;
scheduleReadDiverterTransition = true;
}
}
/// State of valves sent out - buffered by the last SendCommand()
public ulong Route { get { return route; } }
ulong valvesToInvert; /// Route = valesToInvert ^ RequiredRouteWithoutInvertedVlaves
///
/// Initialization data updated by constructors of children components
/// and sent to 'controlCom2panel' by SendCalibData() method.
///
public uint[,] RegValveCalib = new uint[8, 2];
public byte[] MeretRS485Address = new byte[4];
public float[,] TempCalibData = new float[8, 5];
// Array length is the reference flowmeters count plus one
#if DN100
public float[] EtCalib = new float[6] { 1, 1, 1, 1, 1, 1 };
#elif MUNICH || TORINO50 || BADGER_MALA_TRAT || TORUN_PT50_2015
public float[] EtCalib = new float[5] { 1, 1, 1, 1, 1 };
#elif FUZHOU150 || FUZHOU300 || PT200IL
public float[] EtCalib = new float[6] { 1, 1, 1, 1, 1, 1 };
#endif
public uint[] DiverterEdge = new uint[2] { 50, 50 };
public uint[] BalanceRange = new uint[2];
///
/// Private values sent by the last SendCommand()
///
bool sendCommandFlag;
Command cmd;
int refNr;
ulong route;
int refPulses;
TestMethods testMethods;
float filterConstant;
float[] FMFreq;
int regConst;
int shortImp;
StopDevs stopDevs;
///
/// Sets the power of the selected pump
///
/// Pump index 0 .. 5, invalid pump index sets all pumps to 0%
/// Power (0.0f .. 100.0f)
public void SetFMFreq(int index, float power)
{
#if FUZHOU300 || PT200IL
if ((FMFreq == null) || (FMFreq.Length != 6)) FMFreq = new float[6];
#else
if ((FMFreq == null) || (FMFreq.Length != 2)) FMFreq = new float[2];
#endif
if (index >= 0 && index < FMFreq.Length) FMFreq[index] = power;
log.DebugFormat("FMFreq=[{0}{1}{2}{3}{4}{5}]",
FMFreq[0].ToString(),
(FMFreq.Length > 1) ? ("," + FMFreq[1].ToString()) : "",
(FMFreq.Length > 2) ? ("," + FMFreq[2].ToString()) : "",
(FMFreq.Length > 3) ? ("," + FMFreq[3].ToString()) : "",
(FMFreq.Length > 4) ? ("," + FMFreq[4].ToString()) : "",
(FMFreq.Length > 5) ? ("," + FMFreq[5].ToString()) : "");
}
public void UpdateWeights()
{
for (int i = 0; i < MettlerToledo.Standard.BalanceDev.BalancesCount; i++)
{
controlCom.SetWeight(i, MettlerToledo.Standard.BalanceDev.Masses[i]);
}
for (int i = 0; i < MettlerToledo.Multi.BalanceDev.BalancesCount; i++)
{
controlCom.SetWeight(i, MettlerToledo.Multi.BalanceDev.Masses[i]);
}
}
///
/// Constructor
///
public ControlBoardDev(ControlBoardCfg cfg)
: base(cfg)
{
controlBoardCfg = cfg;
#if FUZHOU300 || PT200IL
FMFreq = new float[6] { 0, 0, 0, 0, 0, 0 }; /// Nr. of pumps: Fuzhou150=2, Fuzhou300,PT200IL=6
#else
FMFreq = new float[2] { 0, 0 }; /// Nr. of pumps: Fuzhou150=2, Fuzhou300=6
#endif
emergencyStop = false;
previousEmergencyStop = false;
log.Debug(this.ToString());
}
///
/// Specific pre-initialization for control board only
///
///
public void InitializeComponent(
#if DN100
ControlCom2VB.ControlCom2panel ctrlBrdComponent,
#elif MUNICH
ControlComponent3Munich.UserControl1 ctrlBrdComponent,
#elif FUZHOU150
ControlComponent3Munich.UserControl1 ctrlBrdComponent,
#elif FUZHOU300
ControlComponent3F300.UserControl1 ctrlBrdComponent,
#elif PT200IL
ControlComponent_Izrael2014.UserControl1 ctrlBrdComponent,
#elif TORINO50
ControlComponent_Torino2015.UserControl1 ctrlBrdComponent,
#elif BADGER_MALA_TRAT
ControlComponent_Torino2015.UserControl1 ctrlBrdComponent,
#elif TORUN_PT50_2015
ControlComponent_Torino2015.UserControl1 ctrlBrdComponent,
#endif
ulong valvesToInvert,
float[] tankCapacities)
{
this.valvesToInvert = valvesToInvert;
this.route = valvesToInvert;
if (controlBoardCfg.DebugLevel == Entities.DebugMode.Simulate)
{
controlCom = new ControlComSim();
}
else
{
int cnt = Math.Min(BalanceRange.Length, tankCapacities.Length);
for (int i = 0; i < cnt; i++) BalanceRange[i] = (uint)tankCapacities[i];
controlCom = new ControlComWrap(ctrlBrdComponent);
}
}
/// Initialize this device
public void Initialize()
{
controlCom.SendCalibData(RegValveCalib,
MeretRS485Address,
controlBoardCfg.ComPortNr,
TempCalibData,
EtCalib,
DiverterEdge,
BalanceRange);
log.FatalFormat("Successfully initialized device {0}", ToString());
}
/// Run this device
public void RunDeviceBefore()
{
controlCom.RunDeviceBefore();
previousEmergencyStop = emergencyStop;
emergencyStop = (controlCom.StatusP & StatusP.EmgcyStopActive) != 0;
if (emergencyStop && !previousEmergencyStop)
{
Program.MainWnd.Invoke(new ShowEmergencyStopFormDlgt(ShowEmergencyStopForm));
}
else if (!emergencyStop && previousEmergencyStop)
{
UiBridge.Bridge.OnEmergencyStopChanged(this,UiBridge.EmergencyStopEventArgs.State.CloseForm);
}
if (emergencyStop)
{
/// SendCommand() arguments to clear the emergency stop state
sendCommandFlag = true;
this.refNr = 0;
this.refPulses = 0;
this.cmd = Command.Stop;
this.testMethods = 0;
this.stopDevs = StopDevs.All;
}
else if (scheduleDiverterToTank)
{
/// Reset all SendCommand() arguments
sendCommandFlag = true;
this.cmd = Command.Start;
this.refNr = flowmeterNr4DiverterTest;
this.refPulses = int.MaxValue;
this.testMethods = TestMethods.Diverter;
this.stopDevs = 0;
scheduleDiverterToTank = false;
}
else if (scheduleDiverterToSink)
{
/// Reset all SendCommand() arguments
sendCommandFlag = true;
this.cmd = Command.Stop;
this.refNr = flowmeterNr4DiverterTest;
this.refPulses = 0;
this.testMethods = TestMethods.Diverter;
this.stopDevs = StopDevs.Diverter;
scheduleDiverterToSink = false;
}
else if (scheduleReadDiverterTransition)
{
/// Reset all SendCommand() arguments
sendCommandFlag = true;
this.cmd = Command.ReadDivTransition;
this.refNr = flowmeterNr4DiverterTest;
this.refPulses = 0;
this.testMethods = TestMethods.Diverter;
this.stopDevs = 0;
scheduleReadDiverterTransition = false;
}
else
{
/// Reset all SendCommand() arguments
sendCommandFlag = false;
this.cmd = Command.None;
this.refNr = 0;
this.refPulses = 0;
this.testMethods = 0;
this.stopDevs = 0;
}
this.filterConstant = 0;
this.regConst = 0;
this.shortImp = 0;
}
/// Run this device
public void RunDeviceAfter()
{
if (sendCommandFlag)
{
controlCom.SendCommand(cmd, refNr, route, refPulses, testMethods,
filterConstant, FMFreq, regConst, shortImp, stopDevs);
}
controlCom.RunDeviceAfter();
}
/// Stop this device
public void StopDevice()
{
}
delegate void ShowEmergencyStopFormDlgt();
///
void ShowEmergencyStopForm()
{
(new TBF.Forms.EmergencyStopForm()).Show();
}
///
/// Sends a command to the control board.
///
/// See ControlBoard.Command enum
/// Number of the etalon/reference (1..5)
/// Route: 64-bit installation specific number
/// kolko impulzov ma trvat skuska
/// See ControlBoard.TestMethods enum
/// 0 = No filtering (0..255)
/// Coefficient used to control reg. valves (1..100)
/// 0 = default value, 1 = spec. processing of very short pulses
/// What to stop
public void SendCommand(Command cmd, int refFlowmtrNr, ulong route, int totalRefPulses, TestMethods testMethods,
float filterConstant, int regConst, int shortImp, StopDevs stopDevs)
{
this.cmd = cmd;
this.refNr = refFlowmtrNr;
this.route = route;
this.refPulses = totalRefPulses;
this.testMethods = testMethods;
this.filterConstant = filterConstant;
this.regConst = regConst;
this.shortImp = shortImp;
this.stopDevs = stopDevs;
sendCommandFlag = true;
}
///
/// Set valves to new positions.
///
/// 'ulong' with bits of valves to open set to '1'
/// 'ulong' with bits of valves to close set to '1'
/// 'ulong' with bits of valves that have changed set to '1'
public ulong SetValves(ulong valvesToOpen, ulong valvesToClose)
{
ulong oldRoute = route;
route = (((route ^ valvesToInvert) | valvesToOpen) & (~valvesToClose)) ^ valvesToInvert;
log.DebugFormat("SetValves(x,x), new route = {0}", Utils.ShowRoute(route));
sendCommandFlag = true;
return oldRoute ^ route;
}
///
/// Regulation valves control.
///
/// Regulation valve nr. (1..5)
/// Valve regulation mode, see the enum
/// Target position or target frequency or pulse duration
/// Stabilization time when setting the flow: 0=200ms, step 50ms, max. 1.5 sec.
public void ValveMove(int valveNo, RegulValveMode valveMode, float[] valveValue, int stableTime)
{
controlCom.ValveMove(valveNo, valveMode, valveValue, stableTime);
}
///
/// Open one valve and/or close one valve.
/// Events: ValvesSet
///
/// Valve to be opened
/// Valve to be closed
/// Created operation
public IOperation SetValvesOp(IValve valveOpen, IValve valveClose)
{
return new Valve.SetValvesOp(this, valveOpen, valveClose);
}
///
/// Open and/or close multiple valves.
/// Events: ValvesSet
///
/// A list of valves to be opened
/// A list of valves to be closed
/// Created operation
public IOperation SetValvesOp(IList valvesOpen, IList valvesClose)
{
return new Valve.SetValvesOp(this, valvesOpen, valvesClose);
}
///
/// Starts the measurement.
/// Events: MeasurementStarted
///
/// Flow meter
/// An array of register readers
/// Number of reference pulses to complete the test
/// Created operation
public IOperation StartMeasurementOp(IFlowMeter flowMeter, int refPulses, TestMethods method, float filterConstant)
{
return new StartMeasurementOp(this, flowMeter, refPulses, method, filterConstant);
}
///
/// Queries th econtrol board whether the measurement was completed.
/// Events: MeasurementCompleted or None
///
/// Created operation
public IOperation QueryMeasurementEndOp()
{
return new QueryMeasurementEndOp(this);
}
///
/// Stop the previous control board operation (diverter, gate, etc.)
/// Events: PreviousStopped
///
/// Created operation
public IOperation StopPreviousOp()
{
return new StopPreviousOp(this);
}
///
/// Updates the tank drawing and weight value in Elde software component.
///
/// Current mass in [kg] or approx. volume in [l]
/// Created operation
public IOperation UpdateTankWeightOp()
{
return new UpdateTankWeightOp(this);
}
}
}